This is a multi-investigator, collaborative proposal based on the concept that respiratory epithelial stem/progenitor cell proliferation and differentiation are controlled, at least in part, by transcriptional mechanisms that determine gene expression, cell fates, and functions. Cellular replacement for therapy of severe pulmonary disorders will require detailed knowledge of the transcriptional programs that govern respiratory epithelial specification and differentiation. The long-term goals of this application are to 1) identify respiratory epithelial progenitor cells (REPCs) and the transcriptional programs mediating their proliferation and differentiation, and 2) assess the ability of these transcriptional mediators to engineer/program both endogenous respiratory epithelial progenitor cells and exogenous cells (including embryonic stem cells (ES) and multipotent stem cell progenitors (MSC/Ps), to exhibit respiratory epithelial differentiation that may be useful for cell replacement for life-threatening pulmonary disease. We will use mouse cells and transgenic mouse models to identify REPCs and the transcriptional programs regulating their proliferation and differentiation, seeking to identify subsets of conducting and peripheral airway cells that exhibit stem cell/progenitor cell behavior during lung regeneration/repair. Transcriptional engineering will be used to determine the scope of cellular plasticity and proliferation of REPCs, MSC/Ps, and ES cells. The ability of non-pulmonary cells to be transcriptionally engineered to express respiratory epithelial cell selective genes and functions will be determined. The experiments are designed to test the ability of both endogenous and exogenous REPCs to engraft in the lung and to contribute to repair of the respiratory epithelium. Clinically relevant mouse models will be utilized to assess this potential, with particular focus to post-pneumonectomy lung regeneration and repair after respiratory epithelial cell specific cell ablation and Sftpc-/- mice, the latter developing severe interstitial lung disease that is similar to that seen in individuals inheriting mutations in SFTPC, a gene causing idiopathic pulmonary fibrosis (IPF) in patients. A Stem Cell Consortium will be established at CCHMC, Univ. of Cincinnati College of Medicine to develop education, training, and research bridging hematopoietic stem cell and pulmonary stem cell biology on our campus.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL090156-02
Application #
7497961
Study Section
Special Emphasis Panel (ZHL1-CSR-I (S1))
Program Officer
Blaisdell, Carol J
Project Start
2007-09-28
Project End
2011-06-30
Budget Start
2008-07-01
Budget End
2009-06-30
Support Year
2
Fiscal Year
2008
Total Cost
$498,219
Indirect Cost
Name
Cincinnati Children's Hospital Medical Center
Department
Type
DUNS #
071284913
City
Cincinnati
State
OH
Country
United States
Zip Code
45229
Lange, Alexander W; Haitchi, Hans Michael; LeCras, Timothy D et al. (2014) Sox17 is required for normal pulmonary vascular morphogenesis. Dev Biol 387:109-20
Hamvas, Aaron; Deterding, Robin; Balch, William E et al. (2014) Diffuse lung disease in children: summary of a scientific conference. Pediatr Pulmonol 49:400-9
Wan, Huajing; Liu, Caijun; Wert, Susan E et al. (2013) CDC42 is required for structural patterning of the lung during development. Dev Biol 374:46-57
Sun, Xiaofei; Zhang, Liqian; Xie, Huirong et al. (2012) Kruppel-like factor 5 (KLF5) is critical for conferring uterine receptivity to implantation. Proc Natl Acad Sci U S A 109:1145-50
Whitsett, Jeffrey A; Kalinichenko, Vladimir V (2011) Integrin ýý6ýý4 defines a novel lung epithelial progenitor cell: a step forward for cell-based therapies for pulmonary disease. J Clin Invest 121:2543-5
Sivaprasad, Umasundari; Askew, David J; Ericksen, Mark B et al. (2011) A nonredundant role for mouse Serpinb3a in the induction of mucus production in asthma. J Allergy Clin Immunol 127:254-61, 261.e1-6
Plantier, Laurent; Crestani, Bruno; Wert, Susan E et al. (2011) Ectopic respiratory epithelial cell differentiation in bronchiolised distal airspaces in idiopathic pulmonary fibrosis. Thorax 66:651-7
Kenchegowda, Doreswamy; Swamynathan, Sudha; Gupta, Divya et al. (2011) Conditional disruption of mouse Klf5 results in defective eyelids with malformed meibomian glands, abnormal cornea and loss of conjunctival goblet cells. Dev Biol 356:5-18
Bell, Sheila M; Zhang, Liqian; Mendell, Angela et al. (2011) Kruppel-like factor 5 is required for formation and differentiation of the bladder urothelium. Dev Biol 358:79-90
Perl, Anne-Karina T; Riethmacher, Dieter; Whitsett, Jeffrey A (2011) Conditional depletion of airway progenitor cells induces peribronchiolar fibrosis. Am J Respir Crit Care Med 183:511-21

Showing the most recent 10 out of 34 publications